Volume 17, Issue 2 (5-2014)                   J Arak Uni Med Sci 2014, 17(2): 40-49 | Back to browse issues page

XML Persian Abstract Print


Download citation:
BibTeX | RIS | EndNote | Medlars | ProCite | Reference Manager | RefWorks
Send citation to:

Gholamian A, Divsalar A, Eslami Moghadam M, Saiedifar M, Sabory A A. The Effects of Oxali-Palladium on the Function and Structure of Liver Catalase. J Arak Uni Med Sci 2014; 17 (2) :40-49
URL: http://jams.arakmu.ac.ir/article-1-2595-en.html
1- Department of Cell and Molecular Biology‚ School of Biology‚ Kharazmi University, Tehran, Iran
2- Department of Cellular and Molecular Biology‚ School of Biology‚ Kharazmi University, Karaj, Iran , divsalar@khu.ac.ir
3- Chemistry and Chemistry Engineering Research Center, Tehran, Iran
4- Nanotechnology, Material, and Energy Research Center, Karaj, Iran
5- Institute of Biochemistry and Biophysics‚ University of Tehran, Tehran, Iran
Abstract:   (7325 Views)

Background: Catalase is a basic antioxidant enzyme that exits in human organs, mainly in the liver. The liver as a main tissue in the body that plays a substantial role in the catabolism and detoxification of drugs is a target of toxic and carcinogenic effects of many drugs. In the present study, the side effects of an anti-cancer compound of oxali-palladium on the function and structure of liver catalase were investigated.

Materials and Methods: In this experimental study, changes in the enzyme activity were studied by conversion in substrate (hydrogen peroxide) absorption at wavelength of 240 nm, using UV-visible spectroscopy in the absence and presence of different concentrations of oxali-palladium at room temperature. Furthermore, the effect of oxali-palladium on the tertiary structure of catalase was investigated using fluorescence spectroscopy via studying the changes in the intrinsic enzyme emission in the absence and presence of different concentrations of oxali-palladiumat at both room and physiologic temperatures.

Results: Kinetics data showed that the Km value of bovine liver catalase was 26.8 mM. Moreover, in the presence of different concentrations of oxali-palladium‚ the enzyme activity showed a gradual decrease in a dose-dependent manner (p<0.001). Fluorescence data presented changes in the tertiary structure of the enzyme by quenching fluorescence emission‚ that indicated alteration in protein chromophore environment.

Conclusion: It could be concluded that inhibition of catalase enzyme by anticancer drug of oxali-palladium increases the content of reactive oxygen species. Increase in reactive oxygen species values is one of the chief mechanisms of different anticancer drugs.

Full-Text [PDF 552 kb]   (2587 Downloads)    
Type of Study: Original Atricle | Subject: Basic Sciences
Received: 2013/10/26 | Accepted: 2014/02/26

Add your comments about this article : Your username or Email:
CAPTCHA

Send email to the article author


Rights and permissions
Creative Commons License This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

© 2024 CC BY-NC 4.0 | Journal of Arak University of Medical Sciences

Designed & Developed by : Yektaweb